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A Simulation-Based Methodology for Uncertainty Modeling and Analysis of Clinical Laboratory Measurement Processes

机译:一种基于模拟的不确定模拟方法和临床实验室测量过程的分析

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Clinical diagnostics have a vital role in many phases of the medical decision making process, and therefore knowledge of the quality of the laboratory measurement result is necessary for making the right medical decision. A statement of uncertainty about the result of a laboratory test provides this information. The clinical laboratory measurement process is conceptualized as a self-contained system with the patient sample representing the input and the measurement result being the system output, and a framework for modeling a general clinical laboratory measurement process is presented. The paper discusses how performance specifications for individual components can be used to characterize the associated uncertainty, and Monte Carlo simulation is used to integrate these individual component uncertainties into a net system uncertainty. The proposed approach is illustrated by developing a mathematical model of the serum creatinine assay analysis procedure. The output of the simulation is compared to quality control data from clinical laboratories. The uses of the model to: a.) estimate the uncertainty of the system and set quality specifications using these; and b.) estimate the contribution of each source of uncertainty to the net system uncertainty are illustrated with examples.
机译:临床诊断在医学决策过程的许多阶段具有重要作用,因此了解实验室测量结果的质量是做出正确的医疗决策所必需的。关于实验室测试结果的不确定性陈述提供了这些信息。临床实验室测量过程概念化为独立的系统,其中患者样本代表输入,并且测量结果是系统输出,以及用于建模一般临床实验室测量过程的框架。本文讨论了各个组件的性能规范如何用于表征相关的不确定性,并且Monte Carlo仿真用于将这些单独的组分不确定性集成到净系统不确定性中。通过开发血清肌酸酐测定分析程序的数学模型来说明所提出的方法。将模拟的输出与来自临床实验室的质量控制数据进行比较。模型的用途:a。)估计系统的不确定性并使用这些设定质量规格;湾)用例子估计每个不确定来源对净系统的贡献。

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